Conformational selection is an established mechanism in molecular recognition. Despite its power to explain binding events, it is hardly used in protein/ligand design to modulate molecular recognition. Here, we explore the opportunities and limitations of design by conformational selection. Using appropriate thermodynamic cycles, our approach predicts the effects of a conformational shift on binding affinity and also allows one to disentangle the effects induced by a conformational shift from other effects influencing the binding affinity. The method is assessed and applied to explain the contribution of a conformational shift on the binding affinity of six ubiquitin mutants showing different conformational shifts in six different complexes
To understand cellular processes at the molecular level we need to improve our knowledge of protein−...
To understand cellular processes at the molecular level we need to improve our knowledge of protein−...
<div><p>Interactions between small molecules and proteins play critical roles in regulating and faci...
Conformational selection is an established mechanism in molecular recognition. Despite its power to ...
AbstractConformational selection is an established mechanism in molecular recognition. Despite its p...
In a conformational selection scenario, manipulating the populations of binding-competent states sho...
Protein-protein interactions play an important role in all biological processes. However, the princi...
To perform recognition, molecules must locate and specifically bind their targets within a noisy bio...
To perform recognition, molecules must locate and specifically bind their targets within a noisy bio...
To perform recognition, molecules must locate and specifically bind their targets within a noisy bio...
SummaryProtein interactions are often accompanied by significant changes in conformation. We have an...
Protein-protein interactions play an important role in all biological processes. However, the princi...
Our understanding of what determines ligand affinity of proteins is poor, even with high-resolution ...
Our understanding of what determines ligand affinity of proteins is poor, even with high-resolution ...
Our understanding of what determines ligand affinity of proteins is poor, even with high-resolution ...
To understand cellular processes at the molecular level we need to improve our knowledge of protein−...
To understand cellular processes at the molecular level we need to improve our knowledge of protein−...
<div><p>Interactions between small molecules and proteins play critical roles in regulating and faci...
Conformational selection is an established mechanism in molecular recognition. Despite its power to ...
AbstractConformational selection is an established mechanism in molecular recognition. Despite its p...
In a conformational selection scenario, manipulating the populations of binding-competent states sho...
Protein-protein interactions play an important role in all biological processes. However, the princi...
To perform recognition, molecules must locate and specifically bind their targets within a noisy bio...
To perform recognition, molecules must locate and specifically bind their targets within a noisy bio...
To perform recognition, molecules must locate and specifically bind their targets within a noisy bio...
SummaryProtein interactions are often accompanied by significant changes in conformation. We have an...
Protein-protein interactions play an important role in all biological processes. However, the princi...
Our understanding of what determines ligand affinity of proteins is poor, even with high-resolution ...
Our understanding of what determines ligand affinity of proteins is poor, even with high-resolution ...
Our understanding of what determines ligand affinity of proteins is poor, even with high-resolution ...
To understand cellular processes at the molecular level we need to improve our knowledge of protein−...
To understand cellular processes at the molecular level we need to improve our knowledge of protein−...
<div><p>Interactions between small molecules and proteins play critical roles in regulating and faci...